Measurements and modelling of solid phase lithium sputtering

被引:69
作者
Allain, JP [1 ]
Ruzic, DN [1 ]
机构
[1] Univ Illinois, Urbana, IL 61801 USA
关键词
D O I
10.1088/0029-5515/42/2/312
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The absolute sputtering yields of D+, He+ and Li+ on deuterium saturated solid lithium have been measured and modelled at 45degrees incidence in the energy range 100-1000 eV. The Ion-surface InterAction Experiment (IIAX) was used to measure the absolute sputtering yield of lithium in the solid phase from bombardment with a Colutron ion source. The lithium sample was treated with a deuterium plasma from a hollow cathode source. Measurements also include bombardment of non-deuterium-saturated lithium surfaces. The results lead to the conclusion that the chemical state of the deuterium treated lithium surface plays a major role in the decrease of the lithium sputtering yield. Specifically, preferential sputtering of implanted deuterium atoms over lithium atoms in deuterium treated samples results in a decrease of at least 60% of the lithium sputtering yield, in the case of He+ bombardment. These results also demonstrate that lithium self-sputtering is well below unity and that the fraction of sputtered species in an ionic state ranges from 55 to 65% for incident particle energies between 100 and 1000 eV. Furthermore, correlation of Monte Carlo VFTRIM-3D simulations and IIAX experimental data demonstrate that the surface composition has a one to one ratio between deuterium and lithium components.
引用
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页码:202 / 210
页数:9
相关论文
共 41 条
[31]  
SIGMUND P, 1981, TOPICS APPL PHYSICS, V47
[32]   Low energy (10 to 700 eV) angularly resolved sputtering yields for D+ on beryllium [J].
Smith, PC ;
Ruzic, DN .
NUCLEAR FUSION, 1998, 38 (05) :673-680
[33]   Low-energy Ar+ ion induced angularly resolved Al(100) and Al(110) sputtering measurements [J].
Smith, PC ;
Ruzic, DN .
JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 1999, 17 (06) :3443-3448
[34]   THE PHYSICS OF TERNARY GRAPHITE-INTERCALATION COMPOUNDS [J].
SOLIN, SA ;
ZABEL, H .
ADVANCES IN PHYSICS, 1988, 37 (02) :87-254
[35]  
STEPANOVA MG, 1995, PHYS CHEM MECH SURF, V10, P1179
[36]   Lithium wall conditioning for fuel and impurity control [J].
Sugai, H ;
Ohori, M ;
Toyoda, H .
VACUUM, 1996, 47 (6-8) :981-984
[37]  
THOMAS PR, 1990, J NUCL MATER, V176, P3
[38]   RETENTION AND THERMAL RELEASE OF DEUTERIUM IMPLANTED IN BERYLLIUM [J].
WAMPLER, WR .
JOURNAL OF NUCLEAR MATERIALS, 1984, 123 (1-3) :1598-1602
[39]  
YAMAMURA Y, 1983, IPPJAM25
[40]  
Zalm P.C., 1989, Handbook of ion beam processing technology, P78